Mesenchymal cells

间充质细胞
  • 文章类型: Journal Article
    哺乳动物睾丸间质细胞没有明确定义。本研究表征了成年大鼠的间质细胞类型及其周转动力学。此外,通过scRNA-seq数据集和免疫细胞化学技术进一步分析了间充质细胞群的异质性和Leydig细胞消除对间质稳态的影响.
    通过scRNA-seq在转录组水平上定义间质细胞,然后用蛋白质标记物确认和定量。主要细胞类型的分裂活性通过连续EdU标记动物一周来测定。一些大鼠还接受了一定剂量的乙二甲基磺酸盐(EDS)治疗,以检查Leydig细胞(LCs)的损失如何影响间质稳态三周。
    确定了7种间质细胞类型,包括细胞类型(占整个间质群体的百分比)如下:Leydig(44.6%),巨噬细胞和树突状细胞(19.1%),淋巴样(6.2%),血管内皮(7.9%),平滑肌(10.7%),和间充质细胞(11.5%)。EdU实验表明,除了间充质细胞(MC,17.1%)。对MCs转录组的进一步分析揭示了4个具有不同功能的亚组,包括1)谷胱甘肽代谢和异种生物解毒,2)ROS响应和AP-1信令,3)细胞外基质的合成和结合,和4)免疫应答和调节。茎LC(SLC)主要与表达ARG1和GAP43的亚组3相关。EDS治疗不仅消除了LCs,而且还增加了间质细胞群的亚组3和亚组1和2。此外,EDS治疗在一周内将免疫细胞分裂增加了十倍以上。
    对大鼠睾丸鉴定并定量了7种间质细胞类型。许多人可能会扮演比以前意识到的更多样化的角色。LC的消除导致MC和免疫细胞的显著变化,表明LCs在维持睾丸间质稳态中的重要性。
    UNASSIGNED: The mammalian testicular interstitial cells are not well-defined. The present study characterized the interstitial cell types and their turnover dynamics in adult rats. Additionally, the heterogeneity of the mesenchymal population and the effects of Leydig cell elimination on interstitial homeostasis were further analyzed by scRNA-seq datasets and immunocytochemical techniques.
    UNASSIGNED: Interstitial cells were defined at the transcriptomic level by scRNA-seq and then confirmed and quantified with protein markers. The dividing activity of the major cell types was determined by continuous EdU labeling of the animals for one week. Some of the rats were also treated with a dose of ethylenedimethylsulfonate (EDS) to examine how the loss of Leydig cells (LCs) could affect interstitial homeostasis for three weeks.
    UNASSIGNED: Seven interstitial cell types were identified, including cell types (percentage of the whole interstitial population) as follows: Leydig (44.6%), macrophage and dendritic (19.1%), lymphoid (6.2%), vascular endothelial (7.9%), smooth muscle (10.7%), and mesenchymal (11.5%) cells. The EdU experiment indicated that most cell types were dividing at relatively low levels (<9%) except for the mesenchymal cells (MCs, 17.1%). Further analysis of the transcriptome of MCs revealed 4 subgroups with distinct functions, including 1) glutathione metabolism and xenobiotic detoxification, 2) ROS response and AP-1 signaling, 3) extracellular matrix synthesis and binding, and 4) immune response and regulation. Stem LCs (SLCs) are primarily associated with subgroup 3, expressing ARG1 and GAP43. EDS treatment not only eliminated LCs but also increased subgroup 3 and decreased subgroups 1 and 2 of the mesenchymal population. Moreover, EDS treatment increased the division of immune cells by more than tenfold in one week.
    UNASSIGNED: Seven interstitial cell types were identified and quantified for rat testis. Many may play more diversified roles than previously realized. The elimination of LCs led to significant changes in MCs and immune cells, indicating the importance of LCs in maintaining testicular interstitial homeostasis.
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  • 文章类型: Case Reports
    股骨远端骨水泥模块化假体是骨肿瘤和肢体抢救手术的可行选择。植入物失败的主要原因是植入物的质量差,机械应力,生化反应,和延长植入物在体内使用的时间。据报道,在患有骨肉瘤的受试者中,股骨远端假体植入物发生故障的发生率很少。与植入物失败相关的常见不良事件包括手术部位感染,肿胀,疼痛,外科手术的修订,囊肿形成,在软组织上堆积金属碎片.我们的病例报告总结了一名24岁的术后骨肉瘤患者经历的股骨远端骨水泥模块化假体的严重故障,该患者出现了剧烈的突然疼痛,并且无法承受右腿的重量,这些症状的突然发作在床上时发展。
    A distal femoral cemented modular prosthesis is a viable option for post-bone tumor and limb salvage procedures. The major reasons for implant failures are the poor quality of implants, mechanical stress, biochemical reactions, and extended period of the implant in vivo use. Rare incidences have been reported of distal femur prosthesis implant malfunctioning in a subject having osteosarcoma. Common adverse events associated with implant failure include surgical site infections, swelling, pain, revision of the surgical procedure, cyst formation, and build-up of metal debris on soft tissues. Our case report summarizes gross malfunctioning of a distal femur cemented modular prosthesis experienced by a 24-year-old post-operated osteosarcoma patient who developed excruciating sudden pain and the inability to bear weight on the right leg, with the sudden onset of these symptoms developing while turning in bed.
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  • 文章类型: Journal Article
    正常组织结构的组分充当肿瘤进展的屏障。炎症和伤口愈合程序是实体瘤发生的必要特征,其中对免疫和非免疫基质元件的改变使得在肿瘤进化期间内稳态的丧失。正常基质细胞状态限制组织可塑性和肿瘤发生的确切机制,在肿瘤进展过程中丢失,基本上是未知的。在这里,我们显示健康的胰腺间质表达旁分泌信号分子KITL,也被称为干细胞因子,并将肿瘤发生过程中基质KITL的丢失确定为促进肿瘤。在体内平衡的情况下,间充质KITL的遗传抑制,损伤,和癌症共同表明了KITL信号在维持胰腺组织结构中的作用,这样基质KITL池的丢失增加了肿瘤生长并降低了荷瘤小鼠的存活率。一起,这些发现暗示间充质KITL的缺失是建立肿瘤许可微环境的一种机制.
    通过分析健康和肿瘤相关的胰腺间质的转录程序,我们发现健康胰腺组织中的间充质细胞亚群表达旁分泌信号因子KITL。间充质KITL的丢失是胰腺肿瘤演变的一个伴随和允许的特征,对癌症拦截有潜在的影响。
    Components of normal tissue architecture serve as barriers to tumor progression. Inflammatory and wound-healing programs are requisite features of solid tumorigenesis, wherein alterations to immune and non-immune stromal elements enable loss of homeostasis during tumor evolution. The precise mechanisms by which normal stromal cell states limit tissue plasticity and tumorigenesis, and which are lost during tumor progression, remain largely unknown. Here we show that healthy pancreatic mesenchyme expresses the paracrine signaling molecule KITL, also known as stem cell factor, and identify loss of stromal KITL during tumorigenesis as tumor-promoting. Genetic inhibition of mesenchymal KITL in the contexts of homeostasis, injury, and cancer together indicate a role for KITL signaling in maintenance of pancreas tissue architecture, such that loss of the stromal KITL pool increased tumor growth and reduced survival of tumor-bearing mice. Together, these findings implicate loss of mesenchymal KITL as a mechanism for establishing a tumor-permissive microenvironment.
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  • 文章类型: Journal Article
    血小板衍生生长因子受体α(PDGFRα)通常被认为是间充质细胞和成纤维细胞的一般标志物,但也显示在一部分骨祖细胞中的表达。在骨架内,已经在长骨的骨髓和骨膜中鉴定出Pdgfrα间质细胞,它们在参与骨折修复中起着至关重要的作用。尚未对颅骨愈合中的Pdgfrα细胞进行类似的检查。这里,我们利用Pdgfrα-CreERTM;mT/mG报告动物通过组织学和单细胞RNA测序(scRNA-Seq)检查Pdgfrα+间充质细胞对颅骨修复的贡献。结果表明,通过scRNA-Seq,Pdgfrα+间充质细胞存在于多个细胞簇中,通过组织学,Pdgfrα细胞的急剧增加在早期时间点填充了缺损部位,从而导致骨组织随时间愈合。值得注意的是,白喉毒素介导的Pdgfrα报告细胞消融导致颅骨愈合显着受损。我们的发现表明,颅骨小生境中表达Pdgfrα的细胞在颅骨修复过程中起着至关重要的作用。
    Platelet-derived growth factor receptor α (PDGFRα) is often considered as a general marker of mesenchymal cells and fibroblasts, but also shows expression in a portion of osteoprogenitor cells. Within the skeleton, Pdgfrα+ mesenchymal cells have been identified in bone marrow and periosteum of long bones, where they play a crucial role in participating in fracture repair. A similar examination of Pdgfrα+ cells in calvarial bone healing has not been examined. Here, we utilize Pdgfrα-CreERTM;mT/mG reporter animals to examine the contribution of Pdgfrα+ mesenchymal cells to calvarial bone repair through histology and single-cell RNA sequencing (scRNA-Seq). Results showed that Pdgfrα+ mesenchymal cells are present in several cell clusters by scRNA-Seq, and by histology a dramatic increase in Pdgfrα+ cells populated the defect site at early timepoints to give rise to healed bone tissue overtime. Notably, diphtheria toxin-mediated ablation of Pdgfrα reporter+ cells resulted in significantly impaired calvarial bone healing. Our findings suggest that Pdgfrα-expressing cells within the calvarial niche play a critical role in the process of calvarial bone repair.
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  • 文章类型: Journal Article
    类器官模型已成为肺领域研究方法的组成部分。这些系统可以研究祖细胞和干细胞的自我更新,自组织,和差异化。模拟成熟肺的各种解剖区域的肺类器官的不同模型已经与关于上皮干细胞和祖细胞群体以及填充体内生态位的相应间充质细胞的知识的增加并行出现。在远端肺,2型肺泡上皮细胞(AEC2s)代表参与再生机制以响应各种损伤的干细胞群。这些细胞自我更新并产生进行气体交换的AEC1。多种实验方案允许肺泡类器官的产生,或者肺泡球,从小鼠的肺已经被描述。缺点之一是要求转基因小鼠允许分离具有高活力和纯度的AEC2,以及偶尔出现细支气管和细支气管肺泡类器官。这里,我们为从野生型小鼠产生肺泡球提供了一种改进的门控策略和优化的方案.我们的方法不仅克服了转基因小鼠产生此类器官的需要,而且还产生了纯的肺泡球培养物,没有细支气管和细支气管肺泡类器官。我们的协议有助于这一重要研究工具的标准化。
    Organoid models have become an integral part of the research methodology in the lung field. These systems allow for the study of progenitor and stem cell self-renewal, self-organization, and differentiation. Distinct models of lung organoids mimicking various anatomical regions of mature lungs have emerged in parallel to the increased gain of knowledge regarding epithelial stem and progenitor cell populations and the corresponding mesenchymal cells that populate the in vivo niche. In the distal lung, type 2 alveolar epithelial cells (AEC2s) represent a stem cell population that is engaged in regenerative mechanisms in response to various insults. These cells self-renew and give rise to AEC1s that carry out gas exchange. Multiple experimental protocols allowing the generation of alveolar organoids, or alveolospheres, from murine lungs have been described. Among the drawbacks have been the requirement of transgenic mice allowing the isolation of AEC2s with high viability and purity, and the occasional emergence of bronchiolar and bronchioalveolar organoids. Here, we provide a refined gating strategy and an optimized protocol for the generation of alveolospheres from wild-type mice. Our approach not only overcomes the need for transgenic mice to generate such organoids, but also yields a pure culture of alveolospheres that is devoid of bronchiolar and bronchioalveolar organoids. Our protocol contributes to the standardization of this important research tool.
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  • 文章类型: Journal Article
    背景:损伤组织的再生依赖于干/祖细胞,它可以经历增殖和成熟过程以取代丢失的细胞和细胞外基质(ECM)。骨骼比其他组织具有更高的再生能力,骨髓中有丰富的间充质祖细胞,骨膜,和周围的肌肉。然而,骨折的治疗并不总是成功的;大量的临床病例报告描述了由于各种原因导致的骨不连或延迟愈合。通过干细胞疗法补充外源性干细胞有望改善治疗结果;然而,有几个缺点,包括需要特殊的设备来扩增体外的干细胞,移植后体内细胞存活率低,和肿瘤并发症。使用内源性干/祖细胞,而不是外源性细胞,将是一个可能的解决方案,但目前尚不清楚这些细胞是如何向损伤部位迁移的。
    方法:弹性蛋白微原纤维界面定位蛋白2(Emilin2)的趋化能力,由巨噬细胞产生,通过迁移测定和LC-MS/MS鉴定。使用Emilin2-/-小鼠进一步研究了Emilin2在骨再生中的功能。
    结果:结果表明,在响应骨损伤时,ECM蛋白Emilin2增加。由巨噬细胞产生,Emilin2对间充质细胞表现出趋化特性。Emilin2-/-小鼠经历了延迟的骨再生,损伤后间充质细胞减少。局部施用重组Emilin2蛋白增强骨再生。
    结论:Emilin2通过增加间充质细胞在骨再生中起关键作用。因此,Emilin2可通过募集内源性祖细胞来治疗骨折。
    BACKGROUND: Regeneration of injured tissue is dependent on stem/progenitor cells, which can undergo proliferation and maturation processes to replace the lost cells and extracellular matrix (ECM). Bone has a higher regenerative capacity than other tissues, with abundant mesenchymal progenitor cells in the bone marrow, periosteum, and surrounding muscle. However, the treatment of bone fractures is not always successful; a marked number of clinical case reports have described nonunion or delayed healing for various reasons. Supplementation of exogenous stem cells by stem cell therapy is anticipated to improve treatment outcomes; however, there are several drawbacks including the need for special devices for the expansion of stem cells outside the body, low rate of cell viability in the body after transplantation, and oncological complications. The use of endogenous stem/progenitor cells, instead of exogenous cells, would be a possible solution, but it is unclear how these cells migrate towards the injury site.
    METHODS: The chemoattractant capacity of the elastin microfibril interface located protein 2 (Emilin2), generated by macrophages, was identified by the migration assay and LC-MS/MS. The functions of Emilin2 in bone regeneration were further studied using Emilin2-/- mice.
    RESULTS: The results show that in response to bone injury, there was an increase in Emilin2, an ECM protein. Produced by macrophages, Emilin2 exhibited chemoattractant properties towards mesenchymal cells. Emilin2-/- mice underwent delayed bone regeneration, with a decrease in mesenchymal cells after injury. Local administration of recombinant Emilin2 protein enhanced bone regeneration.
    CONCLUSIONS: Emilin2 plays a crucial role in bone regeneration by increasing mesenchymal cells. Therefore, Emilin2 can be used for the treatment of bone fracture by recruiting endogenous progenitor cells.
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  • 文章类型: Journal Article
    背景:在脉络丛和垂体中,已知脉管系统具有渗透性,与在CNS的其余部分中观察到的血脑屏障相反,允许分子自由通过的开窗表型。这些隔室的内皮,随着分泌,神经谱系细胞(脉络膜上皮和垂体内分泌细胞)已被详细研究,但是对这些区室的血管周围间充质细胞的关注较少。
    方法:将Hic1CreERT2Rosa26LSL-TdTomato小鼠模型与PdgfraH2B-EGFP小鼠模型结合使用,以检查间充质细胞,可细分为脉络丛(CP)和垂体(PG)内的Pdgfra成纤维细胞和Pdgfra-周细胞,通过组织学,免疫荧光染色和单细胞RNA测序分析。
    结果:我们发现CP和PG都拥有大量不同的Hic1+间充质细胞,包括丰富的Pdgfra+成纤维细胞。在垂体内,我们在腺性垂体前叶和神经分泌型垂体后叶确定了不同的Hic1+成纤维细胞亚群.我们还确定了CP的多个不同标记,PG,和脑膜间充质室,包括碱性磷酸酶,吲哚-n-甲基转移酶和CD34。
    结论:新颖,间充质细胞的不同亚群可以在可渗透的血管界面中发现,包括CP,PG,和脑膜,并通过产生结构蛋白对两个器官做出不同的贡献,酶,运输商,和营养分子。
    BACKGROUND: In the choroid plexus and pituitary gland, vasculature is known to have a permeable, fenestrated phenotype which allows for the free passage of molecules in contrast to the blood brain barrier observed in the rest of the CNS. The endothelium of these compartments, along with secretory, neural-lineage cells (choroid epithelium and pituitary endocrine cells) have been studied in detail, but less attention has been given to the perivascular mesenchymal cells of these compartments.
    METHODS: The Hic1CreERT2 Rosa26LSL-TdTomato mouse model was used in conjunction with a PdgfraH2B-EGFP mouse model to examine mesenchymal cells, which can be subdivided into Pdgfra+ fibroblasts and Pdgfra- pericytes within the choroid plexus (CP) and pituitary gland (PG), by histological, immunofluorescence staining and single-cell RNA-sequencing analyses.
    RESULTS: We found that both CP and PG possess substantial populations of distinct Hic1+ mesenchymal cells, including an abundance of Pdgfra+ fibroblasts. Within the pituitary, we identified distinct subpopulations of Hic1+ fibroblasts in the glandular anterior pituitary and the neurosecretory posterior pituitary. We also identified multiple distinct markers of CP, PG, and the meningeal mesenchymal compartment, including alkaline phosphatase, indole-n-methyltransferase and CD34.
    CONCLUSIONS: Novel, distinct subpopulations of mesenchymal cells can be found in permeable vascular interfaces, including the CP, PG, and meninges, and make distinct contributions to both organs through the production of structural proteins, enzymes, transporters, and trophic molecules.
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  • 文章类型: Journal Article
    透明软骨,其特征是没有血管化和神经支配,在软骨层中损伤和缺陷形成的情况下具有最小的自我修复潜力。软骨细胞是确保细胞外基质成分合成的特化细胞,即II型胶原和聚集原。在他们的表面,它们表达整合素CD44,α1β1,α3β1,α5β1,α10β1,αVβ1,αVβ3和αVβ5,它们也是细胞外基质的胶原蛋白结合成分。本文旨在通过独特的组织工程方法,为解决软骨缺损修复的可能问题作出贡献,以及关节软骨病理事件的过程。用于透明软骨修复的体外细胞培养模型可以带来先进的可能性。目前,天然和合成聚合物和软骨细胞的组合有几种变体。在三维环境中,软骨细胞保留其生产能力。在间充质基质细胞的情况下,它们的有利能力是在三维培养中分化为软骨形成谱系。
    Hyaline cartilage, which is characterized by the absence of vascularization and innervation, has minimal self-repair potential in case of damage and defect formation in the chondral layer. Chondrocytes are specialized cells that ensure the synthesis of extracellular matrix components, namely type II collagen and aggregen. On their surface, they express integrins CD44, α1β1, α3β1, α5β1, α10β1, αVβ1, αVβ3, and αVβ5, which are also collagen-binding components of the extracellular matrix. This article aims to contribute to solving the problem of the possible repair of chondral defects through unique methods of tissue engineering, as well as the process of pathological events in articular cartilage. In vitro cell culture models used for hyaline cartilage repair could bring about advanced possibilities. Currently, there are several variants of the combination of natural and synthetic polymers and chondrocytes. In a three-dimensional environment, chondrocytes retain their production capacity. In the case of mesenchymal stromal cells, their favorable ability is to differentiate into a chondrogenic lineage in a three-dimensional culture.
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  • 文章类型: Journal Article
    口腔扁平苔藓是一种慢性炎症,会对口腔粘膜产生不利影响;然而,其病因仍然难以捉摸。因此,口腔扁平苔藓的治疗干预措施仅限于对症管理。本研究提供了衰老间充质细胞积累的证据,CD8+T细胞,口腔扁平苔藓患者的自然杀伤细胞。我们使用国家生物技术信息中心基因表达综合数据库对患者的组织进行了分析,发现通过基因集富集分析,衰老相关基因在这些组织中上调。免疫组织化学分析显示口腔扁平苔藓患者上下层的衰老间充质细胞增加。从口腔扁平苔藓患者的基因表达综合数据库中检索到的单细胞RNA-seq数据显示,间充质细胞被衰老相关基因的上调标记。使用CellChat的细胞间通讯分析显示,衰老间充质细胞通过CXCL12-CXCR4信号传导显著影响CD8+T细胞和自然杀伤细胞,已知激活和招募CD8+T细胞和NK细胞。最后,体外实验表明,间充质细胞分泌衰老相关因子刺激T细胞和自然杀伤细胞的活化,促进上皮细胞衰老和细胞毒性。这些发现表明,具有衰老相关分泌表型的间充质细胞的积累可能是口腔扁平苔藓发病机理的关键驱动因素。
    Oral lichen planus is a chronic inflammatory condition that adversely affects the oral mucosa; however, its etiology remains elusive. Consequently, therapeutic interventions for oral lichen planus are limited to symptomatic management. This study provides evidence of the accumulation of senescent mesenchymal cells, CD8 + T cells, and natural killer cells in patients with oral lichen planus. We profiled the patients\' tissues using the National Center for Biotechnology Information Gene Expression Omnibus database and found that senescence-related genes were upregulated in these tissues by gene set enrichment analysis. Immunohistochemical analysis showed increased senescent mesenchymal cells in the subepithelial layer of patients with oral lichen planus. Single-cell RNA-seq data retrieved from the Gene Expression Omnibus database of patients with oral lichen planus revealed that mesenchymal cells were marked by the upregulation of senescence-related genes. Cell-cell communication analysis using CellChat showed that senescent mesenchymal cells significantly influenced CD8 + T cells and natural killer cells via CXCL12-CXCR4 signaling, which is known to activate and recruit CD8 + T cells and NK cells. Finally, in vitro assays demonstrated that the secretion of senescence-associated factors from mesenchymal cells stimulated the activation of T cells and natural killer cells and promoted epithelial cell senescence and cytotoxicity. These findings suggest that the accumulation of mesenchymal cells with senescence-associated secretory phenotype may be a key driver of oral lichen planus pathogenesis.
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  • 文章类型: Journal Article
    如今,大气压等离子体治疗对于改善骨科领域中生物材料的性能越来越重要。其中,磷酸镁基水泥(MPC)最近显示出作为骨修复材料的有吸引力的特征。等离子体处理对这种水泥的影响,到目前为止还没有调查过,可以代表一种创新的策略来修改MPCs的物理化学性质,并调整它们与细胞的相互作用。制备MPC并用冷的大气压等离子体射流处理5、7.5和10分钟。表征了在处理过程中形成的反应性氮和氧物质。根据相组成研究了MPC的表面,形态学,和地形。在模拟体液中进行初步测试后,扩散,附着力,并评估了人骨髓间充质细胞在MPCs上的成骨分化。等离子体处理诱导鸟粪石相对量的改变,newberyite,以及以时间依赖的方式在MPC上的表面上的Farringtonite。尽管如此,所有研究的支架都显示出良好的生物相容性和细胞粘附性,也支持间充质细胞的成骨分化。
    Atmospheric pressure plasma treatments are nowadays gaining importance to improve the performance of biomaterials in the orthopedic field. Among those, magnesium phosphate-based cements (MPCs) have recently shown attractive features as bone repair materials. The effect of plasma treatments on such cements, which has not been investigated so far, could represent an innovative strategy to modify MPCs\' physicochemical properties and to tune their interaction with cells. MPCs were prepared and treated for 5, 7.5, and 10 min with a cold atmospheric pressure plasma jet. The reactive nitrogen and oxygen species formed during the treatment were characterized. The surfaces of MPCs were studied in terms of the phase composition, morphology, and topography. After a preliminary test in simulated body fluid, the proliferation, adhesion, and osteogenic differentiation of human mesenchymal cells on MPCs were assessed. Plasma treatments induce modifications in the relative amounts of struvite, newberyite, and farringtonite on the surfaces on MPCs in a time-dependent fashion. Nonetheless, all investigated scaffolds show a good biocompatibility and cell adhesion, also supporting osteogenic differentiation of mesenchymal cells.
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